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Nitrogen cycling processes within stormwater control measures: A review and call for research

机译:雨水控制措施中的氮循环过程:回顾与研究呼吁

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Stormwater control measures (SCMs) have the potential to mitigate negative effects of watershed development on hydrology and water quality. Stormwater regulations and scientific literature have assumed that SCMs are important sites for denitrification, the permanent removal of nitrogen, but this assumption has been informed mainly by short-term loading studies and measurements of potential rates of nitrogen cycling. Recent research concluded that SCM nitrogen removal can be dominated by plant and soil assimilation rather than by denitrification, and rates of nitrogen fixation can exceed rates of denitrification in SCM sediments, resulting in a net addition of nitrogen. Nitrogen cycling measurements from other human-impacted aquatic habitats have presented similar results, additionally suggesting that dissimilatory nitrate reduction to ammonium (DNRA) and algal uptake could be important processes for recycling nitrogen in SCMs. Future research should directly measure a suite of nitrogen cycling processes in SCMs and reveal controlling mechanisms of individual rate processes. There is ample opportunity for research on SCM nitrogen cycling, including investigations of seasonal variation, differences between climatic regions, and trade-offs between nitrogen removal and phosphorus removal. Understanding nitrogen dynamics within SCMs will inform more efficient SCM design and management that promotes denitrification to help mitigate negative effects of urban stormwater on downstream ecosystems. (C) 2018 Elsevier Ltd. All rights reserved.
机译:雨水控制措施(SCM)有潜力减轻流域发展对水文和水质的不利影响。雨水法规和科学文献已经假定SCM是反硝化,永久去除氮的重要场所,但是这一假设主要是通过短期负荷研究和对氮循环潜在速率的测量得出的。最新研究得出的结论是,SCM脱氮的主要方式是植物和土壤的同化作用,而不是反硝化作用;固氮速率可能超过SCM沉积物中的反硝化速率,从而导致净添加氮。从其他受人类影响的水生环境进行的氮循环测量也得出了相似的结果,另外表明,硝酸盐异化还原为铵盐(DNRA)和藻类吸收可能是回收SCM中氮的重要过程。未来的研究应直接测量SCM中的一套氮循环过程,并揭示单个速率过程的控制机制。进行SCM氮循环研究的机会很多,包括研究季节变化,气候区域之间的差异以及氮去除和磷去除之间的权衡。了解SCM中的氮动态将有助于更有效的SCM设计和管理,从而促进反硝化作用,从而有助于减轻城市雨水对下游生态系统的负面影响。 (C)2018 Elsevier Ltd.保留所有权利。

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